首页> 美国卫生研究院文献>Nucleic Acids Research >Solution conformation of several free tRNALeu species from bean yeast and Escherichia coli and interaction of these tRNAs with bean cytoplasmic Leucyl-tRNA synthetase. A phosphate alkylation study with ethylnitrosourea.
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Solution conformation of several free tRNALeu species from bean yeast and Escherichia coli and interaction of these tRNAs with bean cytoplasmic Leucyl-tRNA synthetase. A phosphate alkylation study with ethylnitrosourea.

机译:豆酵母和大肠杆菌中几种游离tRNALeu物种的溶液构象以及这些tRNA与豆细胞质Leucyl-tRNA合成酶的相互作用。用乙基亚硝基脲进行磷酸烷基化研究。

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摘要

The solution conformation of eight leucine tRNAs from Phaseolus vulgaris, baker's yeast and Escherichia coli, characterized by long variable regions, and the interaction of four of them with bean cytoplasmic leucyl-tRNA synthetase were studied by phosphate mapping with ethylnitrosourea. Phosphate reactivities in the variable regions agree with the existence of RNA helices closed by miniloops. At the junction of these regions with the T-stem, phosphate 48 is strongly protected, in contrast to small variable region tRNAs where P49 is protected. The constant protection of P22 is another characteristics of leucine tRNAs. Conformational differences between leucine isoacceptors concern the anticodon region, the D-arm and the variable region. In several parts of free tRNALeu species, e.g. in the T-loop, phosphate reactivities are similar to those found in tRNAs of other specificities, indicating conformational similarities among tRNAs. Phosphate alkylation of four leucine tRNAs complexed to leucyl-tRNA synthetase indicates that the 3'-side of the anticodon stem, the D-stem and the hinge region between the anticodon and D-stems are in contact with the plant enzyme.
机译:用乙基亚硝基脲作图谱法研究了来自菜豆,面包酵母和大肠埃希氏菌的八个亮氨酸tRNA的溶液构象,其特征在于长可变区,并且其中四个与豆类细胞质亮氨酰tRNA合成酶的相互作用。可变区中的磷酸盐反应性与微环闭合的RNA螺旋的存在相符。在这些区域与T杆的交界处,磷酸盐48被强力保护,与之不同的是P49受保护的小可变区tRNA。 P22的持续保护是亮氨酸tRNA的另一个特征。亮氨酸同工受体之间的构象差异涉及反密码子区,D臂和可变区。在游离tRNALeu物种的几个部分中,例如在T环中,磷酸盐反应性类似于在其他特异性的tRNA中发现的,表明tRNA之间的构象相似性。与亮氨酰-tRNA合成酶复合的四个亮氨酸tRNA的磷酸烷基化表明,反密码子茎,D-茎以及反密码子与D-茎之间的铰链区的3'-侧与植物酶接触。

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